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PARP-2缺失导致辐射后细胞存活率降低,但在聚(ADP-核糖)水平上存在细胞系特异性差异。

PARP-2 depletion results in lower radiation cell survival but cell line-specific differences in poly(ADP-ribose) levels.

作者信息

Boudra Mohammed-Tayyib, Bolin Celeste, Chiker Sara, Fouquin Alexis, Zaremba Tomasz, Vaslin Laurence, Biard Denis, Cordelières Fabrice P, Mégnin-Chanet Frédérique, Favaudon Vincent, Fernet Marie, Pennaneach Vincent, Hall Janet

机构信息

Institut Curie, Centre de Recherche, Bât. 110-112, Centre Universitaire, 91405, Orsay, France.

出版信息

Cell Mol Life Sci. 2015 Apr;72(8):1585-97. doi: 10.1007/s00018-014-1765-2. Epub 2014 Oct 22.

Abstract

Poly(ADP-ribose) polymerase-2 (PARP-2) activity contributes to a cells' poly(ADP-ribosyl)ating potential and like PARP-1, has been implicated in several DNA repair pathways including base excision repair and DNA single strand break repair. Here the consequences of its stable depletion in HeLa, U20S, and AS3WT2 cells were examined. All three PARP-2 depleted models showed increased sensitivity to the cell killing effects on ionizing radiation as reported in PARP-2 depleted mouse embryonic fibroblasts providing further evidence for a role in DNA strand break repair. The PARP-2 depleted HeLa cells also showed both higher constitutive and DNA damage-induced levels of polymers of ADP-ribose (PAR) associated with unchanged PARP-1 protein levels, but higher PARP activity and a concomitant lower PARG protein levels and activity. These changes were accompanied by a reduced maximal recruitment of PARP-1, XRCC1, PCNA, and PARG to DNA damage sites. This PAR-associated phenotype could be reversed in HeLa cells on re-expression of PARP-2 and was not seen in U20S and AS3WT2 cells. These results highlight the complexity of the relationship between different members of the PARP family on PAR metabolism and suggest that cell model dependent phenotypes associated with the absence of PARP-2 exist within a common background of radiation sensitivity.

摘要

聚(ADP-核糖)聚合酶-2(PARP-2)的活性有助于细胞的聚(ADP-核糖基)化潜能,并且与PARP-1一样,参与了包括碱基切除修复和DNA单链断裂修复在内的多种DNA修复途径。在此,研究了其在HeLa、U20S和AS3WT2细胞中稳定缺失的后果。正如在PARP-2缺失的小鼠胚胎成纤维细胞中所报道的那样,所有三种PARP-2缺失模型对电离辐射的细胞杀伤作用均表现出更高的敏感性,这为其在DNA链断裂修复中的作用提供了进一步的证据。PARP-2缺失的HeLa细胞还显示出更高的组成性和DNA损伤诱导的ADP-核糖聚合物(PAR)水平,PARP-1蛋白水平未改变,但PARP活性更高,同时PARG蛋白水平和活性更低。这些变化伴随着PARP-1、XRCC1、PCNA和PARG向DNA损伤位点的最大募集减少。这种与PAR相关的表型在PARP-2重新表达时可在HeLa细胞中逆转,而在U20S和AS3WT2细胞中未观察到。这些结果突出了PARP家族不同成员之间在PAR代谢方面关系的复杂性,并表明与PARP-2缺失相关的细胞模型依赖性表型存在于辐射敏感性的共同背景中。

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